Haegeman Bart, Sari Tewfik, Etienne Rampal S
Centre for Biodiversity Theory and Modelling, Experimental Ecology Station, Centre National de la Recherche Scientifique, 2 route du CNRS, 09200 , Moulis, France,
J Math Biol. 2014 Jun;68(7):1815-47. doi: 10.1007/s00285-013-0692-4. Epub 2013 Jun 1.
Ecological trade-offs between species are often invoked to explain species coexistence in ecological communities. However, few mathematical models have been proposed for which coexistence conditions can be characterized explicitly in terms of a trade-off. Here we present a model of a plant community which allows such a characterization. In the model plant species compete for sites where each site has a fixed stress condition. Species differ both in stress tolerance and competitive ability. Stress tolerance is quantified as the fraction of sites with stress conditions low enough to allow establishment. Competitive ability is quantified as the propensity to win the competition for empty sites. We derive the deterministic, discrete-time dynamical system for the species abundances. We prove the conditions under which plant species can coexist in a stable equilibrium. We show that the coexistence conditions can be characterized graphically, clearly illustrating the trade-off between stress tolerance and competitive ability. We compare our model with a recently proposed, continuous-time dynamical system for a tolerance-fecundity trade-off in plant communities, and we show that this model is a special case of the continuous-time version of our model.
物种之间的生态权衡常被用来解释生态群落中的物种共存现象。然而,很少有数学模型能够明确地根据权衡来描述共存条件。在此,我们提出一个植物群落模型,它能够进行这样的描述。在该模型中,植物物种竞争位点,每个位点都有固定的胁迫条件。物种在胁迫耐受性和竞争能力方面存在差异。胁迫耐受性被量化为胁迫条件低到足以允许植物定居的位点比例。竞争能力被量化为赢得空位点竞争的倾向。我们推导出了物种丰度的确定性离散时间动态系统。我们证明了植物物种能够在稳定平衡中共存的条件。我们表明,共存条件可以通过图形来描述,清楚地说明了胁迫耐受性和竞争能力之间的权衡。我们将我们的模型与最近提出的一个关于植物群落中耐受性与繁殖力权衡的连续时间动态系统进行了比较,结果表明该模型是我们模型连续时间版本的一个特例。